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Dynamic and transient interactions of Atg9 with autophagosomes, but not membrane integration, are required for autophagy

机译:自噬需要Atg9与自噬体的动态和瞬时相互作用,但不需要膜整合。

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Autophagy is a catabolic process essential for cell homeostasis, at the core of which is the formation of double-membrane organelles called autophagosomes. Atg9 is the only known transmembrane protein required for autophagy and is proposed to deliver membrane to the preautophagosome structures and autophagosomes. We show here that mammalian Atg9 (mAtg9) is required for the formation of DFCP1-positive autophagosome precursors called phagophores. mAtg9 is recruited to phagophores independent of early autophagy proteins, such as ULK1 and WIPI2, but does not become a stable component of the autophagosome membrane. In fact, mAtg9-positive structures interact dynamically with phagophores and autophagosomes without being incorporated into them. The membrane compartment enriched in mAtg9 displays a unique sedimentation profile, which is unaltered upon starvation-induced autophagy. Correlative light electron microscopy reveals that mAtg9 is present on tubular–vesicular membranes emanating from vacuolar structures. We show that mAtg9 resides in a unique endosomal-like compartment and on endosomes, including recycling endosomes, where it interacts with the transferrin receptor. We propose that mAtg9 trafficking through multiple organelles, including recycling endosomes, is essential for the initiation and progression of autophagy; however, rather than acting as a structural component of the autophagosome, it is required for the expansion of the autophagosome precursor.
机译:自噬是细胞稳态必不可少的分解代谢过程,其核心是称为自噬体的双膜细胞器的形成。 Atg9是自噬所需的唯一已知跨膜蛋白,并被提议将膜递送至自噬前体结构和自噬体。我们在这里显示,哺乳动物Atg9(mAtg9)是形成DFCP1阳性自噬体前体(称为噬菌体)所必需的。 mAtg9被募集到独立于早期自噬蛋白(例如ULK1和WIPI2)的噬菌体,但不会成为自噬体膜的稳定成分。实际上,mAtg9阳性结构可与吞噬细胞和自噬小体动态相互作用,而不会被整合到其中。富含mAtg9的膜区室显示出独特的沉降曲线,在饥饿诱导的自噬作用下不会改变。相关的光电子显微镜显示,mAtg9存在于液泡结构产生的管状囊状膜上。我们显示mAtg9驻留在一个独特的内体样隔室和内体,包括回收内体,在那里它与转铁蛋白受体相互作用。我们建议,mAtg9通过多个细胞器的运输,包括回收内体,对于自噬的发生和发展至关重要。但是,自噬体前体的扩增不是必需的,它不是自噬体的结构成分。

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